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    • 6. 发明授权
    • Geiger-Muller counter tube and radiation measurement apparatus
    • Geiger-Muller计数管和辐射测量仪
    • US09209002B2
    • 2015-12-08
    • US14559928
    • 2014-12-04
    • NIHON DEMPA KOGYO CO., LTD.
    • Toshiaki TakeuchiKunio HamaguchiKuichi KuboKozo OnoNoritoshi Kimura
    • H01J47/00H01J47/08G01T1/18G01T1/29G01T1/185
    • H01J47/08G01T1/18G01T1/185G01T1/2935
    • A Geiger-Muller counter tube includes an enclosing tube, an anode conductor, a cathode conductor, an inert gas, and a quenching gas. The enclosing tube is at least partially cylindrical and has a sealed space. The anode conductor includes an anode electrode and a linear first metal lead portion. The anode electrode is arranged inside the space and formed in a rod shape. The first metal lead portion is connected to the anode electrode and supported at an end of the enclosing tube. The cathode conductor includes a cylindrical cathode electrode and a linear second metal lead portion. The cathode electrode surrounds a peripheral area of the anode electrode inside the space. The second metal lead portion is connected to the cathode electrode and supported at the end of the enclosing tube. The cathode electrode has a side surface through a part of which a through-hole passes.
    • Geiger-Muller反向管包括封闭管,阳极导体,阴极导体,惰性气体和淬火气体。 封闭管至少部分为圆柱形并具有密封空间。 阳极导体包括阳极电极和线性第一金属引线部分。 阳极电极布置在空间内并形成为棒状。 第一金属引线部分连接到阳极电极并且被支撑在封闭管的一端。 阴极导体包括圆筒形阴极电极和线性第二金属引线部分。 阴极电极围绕该空间内的阳极电极的周边区域。 第二金属引线部分连接到阴极电极并且被支撑在封闭管的端部。 阴极电极具有穿过其通孔的一部分的侧表面。
    • 7. 发明授权
    • Radiation measurement apparatus
    • 辐射测量仪
    • US09190250B2
    • 2015-11-17
    • US14306247
    • 2014-06-17
    • NIHON DEMPA KOGYO CO., LTD.
    • Toshiaki TakeuchiKozo OnoKuichi KuboKunio Hamaguchi
    • H01J47/00H01J47/08
    • H01J47/08
    • A radiation measurement apparatus for measuring radiation includes a first and second Geiger-Muller counter tubes and a radiation-direction calculating unit. The first Geiger-Muller counter tube seals an electrode within a circular pipe-shaped enclosing tube that extends in a straight line. The first Geiger-Muller counter tube is arranged along a first direction. The second Geiger-Muller counter tube seals an electrode within a circular pipe-shaped enclosing tube that extends in a straight line. The second Geiger-Muller counter tube is arranged in a second direction intersecting with the first direction. The radiation-direction calculating unit is configured to compare a first detection signal and a second detection signal with one another to calculate a direction of radiation to be emitted from the sample. The first detection signal is output from the electrode of the first Geiger-Muller counter tube. The second detection signal is output from the electrode of the second Geiger-Muller counter tube.
    • 用于测量辐射的辐射测量装置包括第一和第二盖革 - 穆勒计数器管和辐射方向计算单元。 第一台Geiger-Muller反向管将电极密封在一条直线上延伸的圆形管状封闭管中。 第一Geiger-Muller计数管沿第一方向布置。 第二台Geiger-Muller反向管密封一条直线延伸的圆形管状封闭管中的电极。 第二盖革 - 穆勒计数器管沿与第一方向交叉的第二方向布置。 辐射方向计算单元被配置为将第一检测信号和第二检测信号彼此进行比较,以计算从样品发射的辐射的方向。 第一检测信号从第一盖革 - 穆勒计数管的电极输出。 第二检测信号从第二盖革 - 穆勒计数器管的电极输出。
    • 8. 发明申请
    • GEIGER-MULLER COUNTER TUBE AND RADIATION MEASUREMENT APPARATUS
    • GEIGER-MULLER计数器管和辐射测量装置
    • US20150155144A1
    • 2015-06-04
    • US14558729
    • 2014-12-03
    • NIHON DEMPA KOGYO CO., LTD.
    • TOSHIAKI TAKEUCHIKUNIO HAMAGUCHIKUICHI KUBOKOZO ONONORITOSHI KIMURA
    • H01J47/08G01T1/18
    • H01J47/08G01T1/18
    • A Geiger-Muller counter tube includes a cylindrical enclosing tube, an anode electrode, a cylindrical cathode electrode, a bead, an inert gas, and a quenching gas. The cylindrical enclosing tube has a sealed space. The anode electrode is disposed inside the space and formed in a rod shape. The cylindrical cathode electrode surrounds a peripheral area of the anode electrode inside the space. The bead is formed of an insulator and having a through-hole in the center, the anode electrode passing through the through-hole. The bead is secured to the anode electrode in a position where the anode electrode is surrounded by the cathode electrode. The inert gas and the quenching gas are sealed inside the space. The bead prevents a direct contact between the anode electrode and the cathode electrode.
    • Geiger-Muller反向管包括圆柱形封闭管,阳极电极,圆柱形阴极电极,珠粒,惰性气体和淬火气体。 圆柱形封闭管具有密封空间。 阳极电极设置在空间内并形成为棒状。 圆筒形阴极电极围绕该空间内的阳极电极的周边区域。 珠由绝缘体形成,并且在中心具有通孔,阳极电极通过通孔。 在阳极被阴极电极包围的位置,珠固定到阳极电极。 惰性气体和淬火气体被密封在空间内。 珠防止阳极和阴极之间的直接接触。